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陆地和淡水涡虫(三肠目,扁形动物门)的分子系统发育:从淡水到陆地再回归

Molecular phylogeny of land and freshwater planarians (Tricladida, Platyhelminthes): from freshwater to land and back.

作者信息

Alvarez-Presas Marta, Baguñà Jaume, Riutort Marta

机构信息

Dpt. de Genètica, Facultat de Biologia, Universitat de Barcelona, Edifici annex, 3a planta, Av. Diagonal, 645, 08028 Barcelona, Spain.

出版信息

Mol Phylogenet Evol. 2008 May;47(2):555-68. doi: 10.1016/j.ympev.2008.01.032. Epub 2008 Feb 6.

DOI:10.1016/j.ympev.2008.01.032
PMID:18359250
Abstract

The suborder Tricladida (phylum Platyhelminthes) comprises the well-known free-living flatworms, taxonomically grouped into three infraorders according to their ecology: Maricola (marine planarians), Paludicola (freshwater planarians), and Terricola (land planarians). Molecular analyses have demonstrated that the Paludicola are paraphyletic, the Terricola being the sister group of one of the three paludicolan families, the Dugesiidae. However, neither 18S rDNA nor COI based trees have been able to resolve the relationships among species of Terricola and Dugesiidae, particularly the monophyly of Terricola. Here, we present new molecular data including sequences of nuclear genes (18S rDNA, 28S rDNA) and a mitochondrial gene (COI) of a wider sample of dugesiid and terricolan species. The new sequences have been analyzed, together with those previously obtained, in independent and concatenated analyses using maximum likelihood and bayesian methods. The results show that, although some parts of the trees remain poorly resolved, they support a monophyletic origin for Terricola followed by a likely return of some species to freshwater habitats. Relationships within the monophyletic group of Dugesiidae are clearly resolved, and relationships among some terricolan subfamilies are also clearly established and point to the need for a thorough revision of Terricola taxonomy.

摘要

三肠目(扁形动物门)包含著名的自由生活扁虫,根据其生态分类为三个下目:海生亚目(海生涡虫)、淡水亚目(淡水涡虫)和陆生亚目(陆生涡虫)。分子分析表明,淡水亚目是并系群,陆生亚目是淡水亚目三个科之一——真涡虫科的姐妹群。然而,基于18S核糖体DNA(rDNA)和细胞色素氧化酶亚基I(COI)构建的系统树都未能解析陆生亚目和真涡虫科各物种之间的关系,尤其是陆生亚目的单系性。在此,我们展示了新的分子数据,包括更广泛的真涡虫科和陆生亚目物种样本的核基因(18S rDNA、28S rDNA)序列和一个线粒体基因(COI)序列。这些新序列与之前获得的序列一起,采用最大似然法和贝叶斯法进行了独立分析和串联分析。结果表明,尽管系统树的某些部分仍解析得不好,但它们支持陆生亚目起源于单系群,随后可能有一些物种回归淡水栖息地。真涡虫科单系群内部的关系得到了清晰解析,一些陆生亚目亚科之间的关系也明确确立,这表明有必要对陆生亚目的分类进行全面修订。

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